Mono-substituted Me3+ compounds of vanadyl phosphate dihydrate VOPO4·2H2O, with formula [Me(H2O)]xVO1-xPO4·nH2O (Me = Al, Fe, Cr, x = 0.15-0.20, n = 2-2.40), and a di-substituted compound with formula Fe0.08Cr0.08(H2O)0.16VO0.84PO4·2.9H2O, either pure or supported, were characterised by XRD, EDAX, TG/DTA, physisorption and chemisorption measurements, and tested as catalysts in the partial oxidation of propane. Incorporation of the Me3+ cation into VOPO4 produces a marked increase in surface area, pore volume, and reducibility, with subsequent enhancement of the catalytic activity. Upon adsorption of these compounds on titania, a homogeneous distribution of highly dispersed species is obtained, whereas on silica small conglomerates of crystalline phases of VOP and FeVOP are formed, presumably by polymerisation on the acidic surface sites of the support. The titania-supported samples exhibit higher catalytic activity and better selectivity to partial oxidation products (acetic acid and propene), compared to silica-based materials; these effects are attributed to the higher dispersion and reducibility of the surface species. Propane oxidation over the supported materials undergoes transition to the ignited state, in which surface temperatures up to 900 K are attained, and homogenous reactions yield mainly propene and CO.

Propane partial oxidation over Me3+-substituted vanadyl phosphates

2002

Abstract

Mono-substituted Me3+ compounds of vanadyl phosphate dihydrate VOPO4·2H2O, with formula [Me(H2O)]xVO1-xPO4·nH2O (Me = Al, Fe, Cr, x = 0.15-0.20, n = 2-2.40), and a di-substituted compound with formula Fe0.08Cr0.08(H2O)0.16VO0.84PO4·2.9H2O, either pure or supported, were characterised by XRD, EDAX, TG/DTA, physisorption and chemisorption measurements, and tested as catalysts in the partial oxidation of propane. Incorporation of the Me3+ cation into VOPO4 produces a marked increase in surface area, pore volume, and reducibility, with subsequent enhancement of the catalytic activity. Upon adsorption of these compounds on titania, a homogeneous distribution of highly dispersed species is obtained, whereas on silica small conglomerates of crystalline phases of VOP and FeVOP are formed, presumably by polymerisation on the acidic surface sites of the support. The titania-supported samples exhibit higher catalytic activity and better selectivity to partial oxidation products (acetic acid and propene), compared to silica-based materials; these effects are attributed to the higher dispersion and reducibility of the surface species. Propane oxidation over the supported materials undergoes transition to the ignited state, in which surface temperatures up to 900 K are attained, and homogenous reactions yield mainly propene and CO.
2002
Istituto di Nanotecnologia - NANOTEC
230
219
231
Propane oxidation
Vanadyl phosphate
Vanadium reducibilit
Ignited state
The propane conversion rate and selectivity are enhanced on MVOP,compared to VOP; This change can be attributed to the increase in surface aarea, which is extremely low in vanadyl phosphate. Propene, acrolein and acid acrylic representing the major products. The catalytic properties are further promoted after adsorption on the porous carriers.This effect can be related to the role of reducible vanadium species in propane catalytic oxidation, which occurs via a redox-type mechanism. The more active (M)VOP/TiO2 samples yield acetic acid as the main oxygenated product, via an acid-catalysed C-C bond scission.The supported catalysts showed a transition to the ignited state when the oven temperature reached a well defined level, which was a function of the spoecific activity.In these conditions, propane conversion is highest and oxygen conversion between 80 and 100%.The main reaction products are CO and propene, formed via a gas phase mechanism. Impact factor 2.258
0
info:eu-repo/semantics/article
262
Marengo S. ; Patrono P. ; Comotti P. ; Galli G. ; Galli P. ; Massucci M.A. ; Meloni M.T.
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/38349
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